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Monoclonal Antibodies Specific for STAT3β Reveal Its Contribution to Constitutive STAT3 Phosphorylation in Breast Cancer

机译:STAT3β特异的单克隆抗体揭示了其对乳腺癌组成型STAT3磷酸化的贡献

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摘要

Since its discovery in mice and humans 19 years ago, the contribution of alternatively spliced Stat3, Stat3β, to the overall functions of Stat3 has been controversial. Tyrosine-phosphorylated (p) Stat3β homodimers are more stable, bind DNA more avidly, are less susceptible to dephosphorylation, and exhibit distinct intracellular dynamics, most notably markedly prolonged nuclear retention, compared to pStat3α homodimers. Overexpression of one or the other isoform in cell lines demonstrated that Stat3β acted as a dominant-negative of Stat3α in transformation assays; however, studies with mouse strains deficient in one or the other isoform indicated distinct contributions of Stat3 isoforms to inflammation. Current immunological reagents cannot differentiate Stat3β proteins derived from alternative splicing vs. proteolytic cleavage of Stat3α. We developed monoclonal antibodies that recognize the 7 C-terminal amino acids unique to Stat3β (CT7) and do not cross-react with Stat3α. Immunoblotting studies revealed that levels of Stat3β protein, but not Stat3α, in breast cancer cell lines positively correlated with overall pStat3 levels, suggesting that Stat3β may contribute to constitutive Stat3 activation in this tumor system. The ability to unambiguously discriminate splice alternative Stat3β from proteolytic Stat3β and Stat3α will provide new insights into the contribution of Stat3β vs. Stat3α to oncogenesis, as well as other biological and pathological processes.
机译:自从19年前在小鼠和人类中发现Stat3替代剪接的Stat3β对Stat3整体功能的贡献以来,一直存在争议。与pStat3α同型二聚体相比,酪氨酸磷酸化(p)Stat3β同型二聚体更稳定,更能与DNA结合,不易去磷酸化,并且显示出独特的细胞内动力学,最显着地延长了核保留时间。细胞系中一种或另一种同工型的过表达证明,Stat3β在转化分析中充当Stat3α的显性负性。但是,对小鼠品系缺乏一种或另一种同工型的研究表明,Stat3同工型对炎症的贡献明显。当前的免疫试剂不能区分源自Stat3α的可变剪接与蛋白水解切割的Stat3β蛋白。我们开发了识别Stat3β(CT7)特有的7个C末端氨基酸并且不与Stat3α交叉反应的单克隆抗体。免疫印迹研究表明,乳腺癌细胞系中的Stat3β蛋白水平(而非Stat3α)与总体pStat3水平呈正相关,这表明Stat3β可能有助于此肿瘤系统中的Stat3活化。能够从蛋白水解性Stat3β和Stat3α中明确区分剪接替代Stat3β的能力,将为Stat3β与Stat3α对肿瘤形成以及其他生物学和病理学过程的贡献提供新的见解。

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